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Transparent Acrylic Pump Head machined

Model :

CNC Machining

Introduction

Precision cnc machining soft cavity, accurate cutting, size in place, many corners repair, smooth transfer. Acrylic (PMMA) pump heads are widely used in fluid handling systems due to their excellent transparency, chemical resistance, and durability. CNC machining enables the production of high-precision acrylic pump heads with complex geometries, tight tolerances, and smooth surface finishes, making them ideal for applications requiring visual flow monitoring and corrosion resistance.

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CNC machining

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Name: Transparent pump head
Material: Acrylic
Features: Ductile material, after complex structural processing, still full permeability.

CNC-machined acrylic pump heads offer superior precision, chemical resistance, and transparency compared to metal or plastic alternatives. They are ideal for applications requiring leak-proof performance and visual flow verification.

Key Features of CNC Machined Acrylic Pump Heads

1. Material Advantages

  • Optical Clarity: Allows real-time visual inspection of fluid flow.

  • Chemical Resistance: Resists acids, alkalis, and solvents (compatible with water, weak acids, and alcohols).

  • Lightweight & Durable: Lower density than metals, yet impact-resistant.

2. Precision Machining Capabilities

  • Tight Tolerances (±0.05mm): Ensures leak-proof sealing with O-rings and gaskets.

  • Complex Internal Channels: CNC milling/lathing enables intricate flow paths.

  • Smooth Surface Finish (Ra <0.8µm): Reduces friction and turbulence in fluid transfer.

3. Common Applications

  • Laboratory & Medical: Peristaltic pumps, chromatography systems.

  • Food & Beverage: Hygienic liquid transfer (FDA-compliant).

  • Chemical Processing: Corrosion-resistant dosing pumps.

  • Aquariums & Water Treatment: Clear housing for monitoring fluid levels.


CNC Machining Process for Acrylic Pump Heads

1. Material Selection

  • Cast Acrylic (PMMA): Preferred for machining due to low internal stress.

  • Extruded Acrylic: Less expensive but prone to cracking during machining.

2. Machining Techniques

  • Milling: Creates ports, grooves, and mounting features.

  • Turning: Produces cylindrical shapes (e.g., threaded fittings).

  • Drilling & Tapping: For hose connectors and assembly screws.

  • Laser Cutting (Optional): For ultra-fine details.

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